We use the mean-field theory to analyze the ground-state phase diagrams of spin-orbit-coupled massimbalanced Fermi gases throughout the BCS-BEC evolution, including both the population-balanced and -imbalanced systems. Our calculations show that the competition between the mass and population imbalance and the Rashba-type spin-orbit coupling gives rise to very rich phase diagrams, involving normal, superfluid, and phase-separated regions. In addition, we find quantum phase transitions between the topologically trivial gapped superfluid and the nontrivial gapless superfluid phases, opening the way for the experimental observation of exotic phenomena with cold atom systems
We study the superfluid properties of two-dimensional spin-population-imbalanced Fermi gases to expl...
This dissertation introduces some new properties of both superfluid phases of fermions with spin-orb...
By adopting a T-matrix-based method within the G0G approximation for the pair susceptibility, we stu...
We use the mean-field theory to analyze the ground-state phase diagrams of spin-orbit-coupled massim...
We use the self-consistent mean-field theory to analyze the effects of Rashba-type spin-orbit coupli...
We use the self-consistent mean-field theory to analyze the effects of Rashba-type spin-orbit coupli...
We consider a general anisotropic spin-orbit coupling and analyze the phase diagrams of both balance...
Here we consider both balanced and imbalanced Fermi gases throughout the BCS-BEC evolution, and we s...
We propose phase diagrams for an imbalanced (unequal number of atoms or Fermi surface in two pairing...
We consider imbalanced Fermi gases with strong attractive interactions, for which Cooper-pair format...
We consider imbalanced Fermi gases with strong attractive interactions, for which Cooper-pair format...
We analyze the effects of in-and out-of-plane Zeeman fields on the BCS-Bose-Einstein condensation (B...
The aim of this thesis is the study of the normal phase of a mass imbalanced and polarized ultra-col...
We study the phase diagram of mass- and spin-imbalanced unitary Fermi gases, in search for the emerg...
The pairing of fermions lies at the heart of superconductivity and superfluidity. The stability of t...
We study the superfluid properties of two-dimensional spin-population-imbalanced Fermi gases to expl...
This dissertation introduces some new properties of both superfluid phases of fermions with spin-orb...
By adopting a T-matrix-based method within the G0G approximation for the pair susceptibility, we stu...
We use the mean-field theory to analyze the ground-state phase diagrams of spin-orbit-coupled massim...
We use the self-consistent mean-field theory to analyze the effects of Rashba-type spin-orbit coupli...
We use the self-consistent mean-field theory to analyze the effects of Rashba-type spin-orbit coupli...
We consider a general anisotropic spin-orbit coupling and analyze the phase diagrams of both balance...
Here we consider both balanced and imbalanced Fermi gases throughout the BCS-BEC evolution, and we s...
We propose phase diagrams for an imbalanced (unequal number of atoms or Fermi surface in two pairing...
We consider imbalanced Fermi gases with strong attractive interactions, for which Cooper-pair format...
We consider imbalanced Fermi gases with strong attractive interactions, for which Cooper-pair format...
We analyze the effects of in-and out-of-plane Zeeman fields on the BCS-Bose-Einstein condensation (B...
The aim of this thesis is the study of the normal phase of a mass imbalanced and polarized ultra-col...
We study the phase diagram of mass- and spin-imbalanced unitary Fermi gases, in search for the emerg...
The pairing of fermions lies at the heart of superconductivity and superfluidity. The stability of t...
We study the superfluid properties of two-dimensional spin-population-imbalanced Fermi gases to expl...
This dissertation introduces some new properties of both superfluid phases of fermions with spin-orb...
By adopting a T-matrix-based method within the G0G approximation for the pair susceptibility, we stu...